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Structure and properties of titanium phosphides produced on the Ti6A14V titanium alloy

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Titanium and its alloys belong to the group of most promising metallic biomaterials used for bone implants. Their distinguishing properties are the high resistance to biological corrosion and the relatively good mechanical properties accompanied by low ductility. Their use is however limited by their low frictional wear resistance and the possibility of their constituents being released into the surrounding biological environment. The techniques which play the basic role in obviating these drawbacks are various surface treatments. The paper presents the results of examinations of the structure, phase composition, chemical composition, wear resistance and biocompatibility of the new composite layers of the Ti3P+Ti2Ni type produced on the Ti6A14V titanium alloy by a hybrid method.
Rocznik
Strony
5--11
Opis fizyczny
Bibliogr. 10 poz., rys.
Twórcy
autor
autor
  • The Children's Memorial Health Institute, Department of Pathology, Warsaw, Poland
Bibliografia
  • 1. Czarnowska E., Wierzchoń T., Maranda A. Karczmarewicz E.: Improvement of titanium alloy for biomedical applications by nitriding and carbonitriding process under glow discharge conditions. J. Mat. Sci.: Material in Medicine 11 (2000) 73.
  • 2. Haynes D., Rogers S., Hay S., Howie D.: The differences in toxicity and release of boneresorbing mediators induced by titanium and cobalt-chromium-alloy wear particles. J. Joint Surg. 75A (1993) 825.
  • 3. Shinto Y., Uchida A., Yoshikawa H., et al.: Inguinal lymphadenopathy due to metal release from prosthesis: a case report. J. Bone Joint Surg. 75B (1993) 266.
  • 4. Czarnowska E., Zajączkowska A. et al. Composite layer with Ti3P external zone produced on titanium alloy for bone applications, Adv. Science Technol. 49 (2006) 240.
  • 5. Polish Standard PN-83/H-D4302. Strength test of metals.
  • 6. Revell P.A., Al-Saffar N., Kobayashi A.: Biological reaction to debris in relation to jointprostheses. J. Eng. Med. 211 (1997) 187.
  • 7. Weingart D., Steinemann S., Schilli W., et al. : Titanium deposition in regional lymph nodes after insertion of titanium screw implants in inaxillofacial region. Int. J. Oral Maxillofac. Surg. 23 (1994) 450.
  • 8. Kohilas K., Lyons M., Lofthouse R., et al. : Effect of prosthetic titanium wear debris on mitogen-induced monocyte and lymphoid activation. J. Biomed. Mater. Res. 47 (1999) 95.
  • 9. Jacobs J.J., Skipor A.K., Patterson L.M. et al.: Metal release in patients who have had a primary total hip arthroplasty. A prospective, controlled, longitudinal study. J. Bone Joint Surg. Am. 80 (1998) 1447.
  • 10. Zaffe D., Bertoldi C., Consolo U.: Accumulation of aluminium in lamellar bone after implantation of titanium plates, Ti-6A1-4V screws, hydroxyapatite granules. Biomaterials 25 (2004) 3837.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG4-0028-0019
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